本书是 Marc Thompson 博士 20 年模拟电路设计和教学经验的总结,讲述了模拟电路与系统设计中常用的直观分析方法。本书提出了“模拟电路直观方法学”,力图帮助学生和设计人员摆脱复杂的理论推导与计算,充分利用直观知识来应对模拟电路工程设计挑战。全书共分为 16 章,内容涵盖了二极管、晶体管、放大器、滤波器、反馈系统等模拟电路的基本知识与设计方法。本书大纲第 1 章与第 2 章为介绍性材料。第 1 章是本书的引言,同时介绍了模拟电路设计的发展动机,其中引用了一些精选的历史事件。第 2 章讲述后续章节中用到地重要的信号处理概念,以使读者们能够跟上作者的思路。第 3 章至第 8 章讲述双极性器件的物理学原理、双极性结型晶体管 (bipolar junction transistor, BJT) 、晶体管放大器,以及用于带宽估计与开关速度分析的近似技术。第 9 章讲述 CMOS 管和 CMOS 管放大器的基础知识。前面章节介绍的用于放大器设计的带宽估计技术也同样适用于 CMOS 管器件。第 10 章讲述 晶体管的开关效应。晶体管是如何实现导通和关闭呢?又如何估计它的开关速度呢?第 11 章回顾反馈系统 (feedback system) 的基本知识以及设计稳定反馈系统的伯德图 / 相位裕度方法 (Bod plot / phase margin) 。第 12 章和第 13 章讲述实际运算放大器的设计、使用和限制,包括电压反馈 (voltage-feedback) 以及电流反馈 (current-feedback) 放大器。第 14 章讲述模拟低通滤波器设计的基本知识,包括巴特沃思 (Butterworth) 、切比雪夫 (Chebyshev) 、椭圆 (elliptic) 以及贝塞尔 (Bessel) 滤波器的无源梯形实现和胡源实现。第 15 章讲述实际电路设计问题,比如 PCB 版图设计规则、无源器件的使用和限制等。第 16 章是一些有用的设计技术和设计技巧的大杂烩,这些内容又不适合放在其他章节,所以作为独立的章节进行讲述。一些说明性的分析问题以及 MATLAB 和 SPICE 设计示例点缀在全书的字里行间,以帮助读者理解本书的内容。
标签: 模拟电路
上传时间: 2022-02-14
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The PW2053 is a high-efficiency monolithic synchronous buck regulator using a constantfrequency, current mode architecture. The device is available in an adjustable version. Supply currentwith no load is 40uA and drops to <1uA in shutdown. The 2.5V to 5.5V input voltage range makesthe PW2053 ideally suited for single Li-Ion battery powered applications. 100% duty cycle provideslow dropout operation, extending battery life in portable systems. PWM/PFM mode operationprovides very low output ripple voltage for noise sensitive applications. Switching frequency isinternally set at 1.2MHz, allowing the use of small surface mount inductors and capacitors. Lowoutput voltages are easily supported with the 0.6V feedback reference voltage
标签: pw2053
上传时间: 2022-02-14
上传用户:jason_vip1
PW1555 is a programmable current limit switch with input voltage range selection and outputvoltage clamping. Extremely low RDS(ON) of the integrated protection N-channel FET helps toreduce power loss during the normal operation. Programmable soft-start time controls the slew rateof the output voltage during the start-up time. Independent enable control allows the complicatedsystem sequencing control. It integrates the over-temperature protection shutdown andautorecovery with hystersis
标签: pw1555
上传时间: 2022-02-14
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能源短缺和环境恶化是人类共同面临的挑战。开发新型清洁能源是解决能源短缺和环境恶化的捷径,但是太阳能能源不连续和不稳定的缺点影响其单独使用的效果。为了解决这个问题,可以选择使用多种性质互补的能源联合供电,相互弥补彼此的不足,以达到连续稳定的电能输出。基于双输入直流变换器(Multipk-Input Converter,MC)的光电互补系统相对于风光互补系统而言,在太阳能功率充足时,可以选择将多余的能量进行并网,省去了蕃电池等储能设备,也可大大节约成本,简化控制:而且电网是全天候的,比纯新能源联合系统更加可靠。因此本文将对光电互补系统,研究其拓扑、能量管理和系统参数设计等等在隔离应用的中小功率场合,推挽变换器控制方便,结构简单,应用广泛传统的多输入推挽变换器结构复杂,成本高。通过分析MIC的生成方法,利用脉冲电压源 Pulsating Voltage Source Ce,PⅤSC或者脉冲电流源(Pulsating Curren Source Cell,PCSC)中联或者并联构成简单实用的一族多输入推挽变换器,详细分析了BUCK型PVSC串联构成的双输入推挽变换器的小信号模型和控制方式,为了能够提供交流输出,本文还详细分析了半桥逆变电路的控制方式,并推导出其数学控制模型通过分析系统的工作模式、能量管理策略和不同控制方式对系统的影响,阐叨基于双输入推挽变换器的光电互补系统的工作原理。并对系统软件涉及到的太阳能最大功率跟踪、光电互补控制和逆变控制等算法进行重点研究功率电路参数设计合理与否,直接影响着系统的性能和指标,其中推挽变压器和滤波器的参数设计尤为重要,为此专门给出了硬件参数设计步骤;然后,根据软件算法,设计了控制软件流程图来更清晰的表达软件控制的思想软件参数是影响系统鲁棒性和快速性的另一个关键因素,在硬件设计的基础上,对软件参数进行优化设计,并利用 Simulink软件对设计参数进行仿真分析和修正。然后采用TMS320F2809作为控制芯片,搭建了实验原理样机,并进行了相关验证实验
标签: 推挽变换器
上传时间: 2022-03-16
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随着光伏发电系统快速发展,以及电动汽车充电桩的普及,传统的剩余电流保护器无法满足实际需求。介绍了一款B型剩余电流保护器,采用磁调制剩余电流互感器和零序电流互感器采集剩余电流。根据GB/T 22794—2017标准要求,可识别1 kHz及以下的正弦交流、带和不带直流分量的脉动直流、平滑直流等剩余电流信号。经信号调理电路将电压信号送到单片机进行采集和判断。通过试验测试,该样机在测试精度和速度上均符合国家标准的相关要求。The rapid development of photovoltaic power generation systems and the popularity of electric vehicle charging piles make the traditional residual current protective devices unable to meet the actual demand.This paper proposed a type B residual current protective device,which uses the magnetically modulated residual current transformer and the zero sequence current transformer to acquire the residual current.According to the requirements of GB/T 22794—2017,the type B residual current protective device can detect sinusoidal AC residual current of 1kHz and below 1kHz,pulsating DC residual current with and without DC component,smooth DC residual current and so on.The signal processing circuit sends the voltage signal to the MCU for acquisition and judgment.Through experimental tests,the device meets the relevant requirements of national standards in terms of test accuracy and speed.
标签: 电流保护器
上传时间: 2022-03-27
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配电网中,各种配电终端的电流、电压、有功功率及无功功率等模拟量的采集是配电网自动化的重要环节。这些模拟量的采集也是各种仪器和家用电器的必要功能。因此,设计了基于嵌入式STM32F103单片机的交流电压、交流电流及有功功率的采集系统,通过电压互感器TV1005M和电流互感器TA1005M分别检测交流电压和交流电流值;屏幕或者手机APP和WiFi模块互联后,可以实时显示交流电压、交流电流、功率及电量值;通过设定阈值功率,可以实现对电流的监控和对电路的保护。In the distribution network,the collection of analog,such as current,voltage,active power,and reactive power at various distribution terminals is a very important part of distribution network automation. These analog acquisitions are also for various instruments and household appliances. Very important technology. Therefore,an AC voltage,AC current and active power acquisition system based on embedded STM32 F103 machine is designed,and AC voltage and AC current values are detected by voltage transformer TV1005 M and current Transformer TA1005 M respectively;After the screen or mobile phone APP and WiFi modules are interconnected,AC voltage,AC current,power,and power values can be displayed in real time;By setting the threshold power,the current can be monitored and the circuit can be protected.
上传时间: 2022-03-27
上传用户:shjgzh
本系统基于STM32单片机设计的非接触式电流检测控制系统,通过OPA548片将所给任意信号放大,由100Ω电阻和INA128芯片进行电流电压转换放大后,利用STM32单片机对获取的电压信号以0.488μs频率采样,利用STM32单片机的FFT库,获得信号的谐波信息。测量电流信号精准,该设计可广泛应用在以STM32单片机为核心控制器件的新型仪表中,性能精准且抗干扰能力强。This system is a non-contact current detection and control system based on STM32 single chip microcomputer. It amplifiesany signal through OPA548 chip, converts and amplifies the current and voltage by 100 Ω resistance and INA128 chip. The obtainedvoltage signal is sampled at the frequency of 0.488 μs by STM 32 single chip microcomputer, and the harmonic information of the signalis obtained by the FFT library of STM 32 single chip microcomputer. The measurement of current signal is accurate. This design can bewidely used in a new instrument with STM 32 single chip microcomputer as its core control device, with accurate performance and stronganti-interference capability.
上传时间: 2022-03-27
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设计了自动控制系统综合实验案例“基于LabVIEW和单片机的温度控制系统设计”。实验系统硬件部分由单片机、温度传感器、D/A转换模块、调压模块和电烤箱组成,设计了单片机与各个模块之间的接口电路。软件部分采用LabVIEW软件实现控制算法,并设计监控界面实现参数设定、温度数据实时监控等功能。设计了单片机与LabVIEW软件之间的串口通信程序,实现了输入、输出数据的传输。通过综合实验系统设计,使学生得到控制系统设计和实验调试等综合能力的训练。A comprehensive experimental case of the automatic control system is presented,which is the design of the temperature control system based on LabVIEW and SCM.The hardware part of the experimental system is composed of the SCM,temperature sensor,D/A conversion module,voltage regulating module and electric oven.The interface circuit between the SCM and each module is designed.In the software part,LabVIEW software is used to realize the control algorithm,and the monitoring interface is designed to realize the functions of parameter setting,temperature data real-time monitoring,etc.The serial communication program between the SCM and LabVIEW software is designed to realize the transmission of input and output data.Through the design of this comprehensive experimental system,students can get the comprehensive ability training for the control system design,experiment debugging,etc.
上传时间: 2022-03-27
上传用户:qdxqdxqdxqdx
近距电能传输——高效安全近距电能传输一般基于电磁感应原理进行。在此技术基础上,当接收器邻近发射器时才会进行电能传输。电磁感应技术的历史长达百年,多年米一直应用于各类电子产品中—如此普及全因其简单、高效以及安全技术概览以下将为你简要介绍无线电能传输技术。System Overview(Communication)Receiver sends messagesTo provide control information to the transmitterBy load modulation on the power signaTransmitter receives messagesTo receive control information frorn the recelverBy de-modulation of the reflected loadPower Pick Up( Receiver)Secondary coil (L Serial resonance capacitor (C) for efficient power transfer Parallel resonance capacitor(C, )for detection purposes Rectifier: full bridge(diode, or switched)+ capacitor Output switch for(dis)connecting the loadReceiver modulates load by Switching modulation resistor(R,n),or Switching modulation capacitor(Ca)Transmitter de-modulates reflected load by Sensing pnmary coil curent (p)and/o Sensing primary coil voltage (V,
上传时间: 2022-03-31
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设计功率MOSFET驱动电路时需重点考虑寄生参数对电路的影响。米勒电容作为MOSFET器件的一项重要参数,在驱动电路的设计时需要重点关注。重点观察了MOSFET的开通和关断过程中栅极电压、漏源极电压和漏源极电流的变化过程,并分析了米勒电容、寄生电感等寄生参数对漏源极电压和漏源极电流的影响。分析了栅极电压在米勒平台附近产生振荡的原因,并提出了抑制措施,对功率MOSFET的驱动设计具有一定的指导意义。When designing the drive circuit of power MOSFET,the influence of parasitic parameters on the circuit should be concerned.As an important parameter of MOSFET device,Miller capacitance should be considered in the design of drive circuit.The variation of gate voltage,drain source voltage and drain source current during the turn-on and turn-off of MOSFET were observed.The influences of parasitic parameters such as Miller capacitance and parasitic inductance on drain source voltage and drain source current were analyzed.The reasons of gate voltage oscillation nearby Miller plateau were analyzed,and the restraining measures were put forward.This research was instructive for the drive design of power MOSFET.
标签: mosfet
上传时间: 2022-04-02
上传用户:默默